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DNA Microarrays: Sample Quality Control Array Hybridization and Scanning

机译:DNA微阵列:样品质量控制阵列杂交和扫描

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摘要

Microarray expression profiling of the nervous system provides a powerful approach to identifying gene activities in different stages of development, different physiological or pathological states, response to therapy, and, in general, any condition that is being experimentally tested1. Expression profiling of neural tissues requires isolation of high quality RNA, amplification of the isolated RNA and hybridization to DNA microarrays. In this article we describe protocols for reproducible microarray experiments from brain tumor tissue2. We will start by performing a quality control analysis of isolated RNA samples with Agilent's 2100 Bioanalyzer "lab-on-a-chip" technology. High quality RNA samples are critical for the success of any microarray experiment, and the 2100 Bioanalyzer provides a quick, quantitative measurement of the sample quality. RNA samples are then amplified and labeled by performing reverse transcription to obtain cDNA, followed by in vitro transcription in the presence of labeled nucleotides to produce labeled cRNA. By using a dual-color labeling kit, we will label our experimental sample with Cy3 and a reference sample with Cy5. Both samples will then be combined and hybridized to Agilent's 4x44 K arrays. Dual-color arrays offer the advantage of a direct comparison between two RNA samples, thereby increasing the accuracy of the measurements, in particular for small changes in expression levels, because the two RNA samples are hybridized competitively to a single microarray. The arrays will be scanned at the two corresponding wavelengths, and the ratio of Cy3 to Cy5 signal for each feature will be used as a direct measurement of the relative abundance of the corresponding mRNA. This analysis identifies genes that are differentially expressed in response to the experimental conditions being tested.
机译:神经系统的微阵列表达谱分析为鉴定处于不同发育阶段,不同生理或病理状态,对治疗的反应以及一般而言正在实验测试的任何疾病的基因活性提供了一种有力的方法 1 。神经组织的表达谱分析需要分离高质量的RNA,扩增分离的RNA并与DNA微阵列杂交。在本文中,我们描述了从脑肿瘤组织 2 进行可重现的微阵列实验的方案。我们将首先使用安捷伦2100生物分析仪“芯片实验室”技术对分离的RNA样品进行质量控制分析。高质量的RNA样品对于任何微阵列实验的成功至关重要,而2100生物分析仪可提供快速,定量的样品质量测量。然后将RNA样品扩增并通过进行逆转录进行标记以获得cDNA,然后在存在标记核苷酸的情况下进行体外转录以产生标记cRNA。通过使用双色标记试剂盒,我们将用Cy3标记实验样品,并使用Cy5标记参考样品。然后将两个样品合并并与安捷伦4x44 K阵列杂交。双色阵列提供了直接比较两个RNA样品的优势,从而提高了测量的准确性,特别是对于表达水平的微小变化,因为两个RNA样品与单个微阵列竞争性杂交。阵列将在两个相应的波长处进行扫描,每个特征的Cy3与Cy5信号之比将用作相应mRNA相对丰度的直接测量值。该分析鉴定了响应于所测试的实验条件而差异表达的基因。

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